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From the mode diameter, the ratio in the surface areas of Si nanoparticles fabricated using the one-step and two-step milling methods is estimated to be 1 1.1, and therefore, the difference in the surface area cannot explain the PL intensity ratio of 1 2.
The diagnostic accuracy of these methods is estimated to be 98 to 99% [ 9].
While the number of new methods is estimated to be doubling roughly every five years (Hasegawa and Holm, 2009), several comparative studies have observed many inconsistencies and paradoxes when comparing the alignments generated by existing methods.
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However, it is not clear what quantity each of these ad-hoc methods is estimating, and their use can lead to differing conclusions.
Uncertainties in AGD (using Dance or Wu methods) were estimated considering an overall 20% error [18].
The values of behavioral parameters both for the right and the left entry lane with two different methods were estimated.
The PL quantum efficiencies for Si nanoparticles produced by the one-step and two-step milling methods are estimated to be 9 and 15 %, respectively.
The level of VGCNF distribution and dispersion in the matrix achieved by the four preparation methods was estimated from SEM images; see Figure 1.
However some methods were estimated to be more effective than others.
The accuracy of indirect methods was estimated by correlation analysis between direct ratios and reconstructed ratios.
Bootstrap support values for both methods were estimated using 100 pseudo-replicates.
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